Study on the Regularity of Ammonia-Related Refrigeration Accidents in China from 2010 to 2020
Abstract
:1. Introduction
2. Materials and Methods
2.1. Data Sources
- Accident/incident occurred in ammonia-related refrigeration enterprises and ports of China;
- The hazard of the accident is ammonia, ammonia gas, or its flammable mixture;
- The accident happened between 1 January 2010 and 31 July 2020.
2.2. Analysis Methods
3. Results
3.1. Temporal Evolution Characteristics of ArRAs
3.1.1. Annual Evolution of ArRAs
3.1.2. Monthly Evolution of ArRAs
3.2. Spatial Distribution Characteristics of ArRAs
3.2.1. Distribution in 31 Administrative Districts
3.2.2. Distribution in Seven Geographic Regions
3.2.3. Distribution in the Four Economic Zones
3.3. The Direct Causes of ArRAs
4. Discussion
4.1. ArRAs Time Evolution and Safety Management Policy
4.2. ArRAs Spatial Distribution and Cold Storage Distribution
4.3. Variety Trends between the Number of Accidents and Casualties
4.4. Cause Analysis of ArRAs
4.5. Recommendations for ArRAs Prevention
4.6. Limitations and Future Research
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- State Council General Office of PRC. Notice of the General Office of the State Council on Printing and Distributing the “14th Five-Year” Cold Chain Logistics Development Plan: GuobanFa [2021] No. 46. Available online: http://www.gov.cn/zhengce/zhengceku/2021-12/12/content_5660244.htm (accessed on 30 January 2022).
- China Industry Research Network. 2022–2028 Global and Chinese Cold Storage Construction Market Status In-Depth Research and Development Trend Analysis Report; China Industry Research Network: Beijing, China, 2021. [Google Scholar]
- Zhiyan Consulting. 2022–2028 China Cold Storage Industry Market Panoramic Analysis and Development Trend Research Report; Zhiyan Consulting: Shenzhen, China, 2021. [Google Scholar]
- Colonna, P.; Gabrielli, S. Industrial trigeneration using ammonia–water absorption refrigeration systems (AAR). Appl. Therm. Eng. 2003, 23, 381–396. [Google Scholar] [CrossRef]
- Pearson, A. Refrigeration with ammonia. Int. J. Refrig. 2008, 31, 545–551. [Google Scholar] [CrossRef]
- Orozco, J.; Van Caneghem, J.; Hens, L.; González, L.; Lugo, R.; Díaz, S.; Pedroso, I. Assessment of an ammonia incident in the industrial area of Matanzas. J. Clean. Prod. 2019, 222, 934–941. [Google Scholar] [CrossRef]
- Anjana, N.; Amarnath, A.; Nair, M.H. Toxic hazards of ammonia release and population vulnerability assessment using geographical information system. J. Environ. Manag. 2018, 210, 201–209. [Google Scholar] [CrossRef] [PubMed]
- Safety Committee of the State Council of PRC. Notice of the Safety Committee of the State Council on In-depth Implementation of Special Treatment of Liquid Ammonia Use in Ammonia-Related Refrigeration Enterprises (Safety Committee [2013] No. 6). Available online: https://www.china-safety.org.cn/caws/contents/channel_20191/2013/0924/220297/content_220297.htm (accessed on 1 February 2022).
- State Administration of Work Safety of PRC. Notice of the State Administration of Safety Supervision on the Issuance of Opinions on Curbing Serious Accidents in the Industry and Trade Sector (General Administration of Safety Supervision IV [2016] No. 68). Available online: https://www.mem.gov.cn/gk/gwgg/xgxywj/qt/201606/t20160630_233291.shtml (accessed on 1 February 2022).
- Jinglin, Z. Safety Systems Engineering, 3rd ed.; Coal Industry Press: Beijing, China, 2019; pp. 132–140. [Google Scholar]
- Kidam, K.; Hussin, N.; Hassan, O.; Ahmad, A.; Johari, A.; Hurme, M. Accident prevention approach throughout process design life cycle. Process Saf. Environ. Prot. 2014, 92, 412–422. [Google Scholar] [CrossRef]
- Moura, R.; Beer, M.; Patelli, E.; Lewis, J.; Knoll, F. Learning from major accidents to improve system design. Saf. Sci. 2016, 84, 37–45. [Google Scholar] [CrossRef] [Green Version]
- Zhao, L.; Qian, Y.; Hu, Q.-M.; Jiang, R.; Li, M.; Wang, X. An Analysis of Hazardous Chemical Accidents in China between 2006 and 2017. Sustainability 2018, 10, 2935. [Google Scholar] [CrossRef] [Green Version]
- Shin, I.J. Major Industrial Accidents in Korea: The Characteristics and Implication of Statistics 1996–2011. Process Saf. Prog. 2013, 32, 90–95. [Google Scholar] [CrossRef]
- Wang, B.; Wu, C.; Reniers, G.; Huang, L.; Kang, L.; Zhang, L. The future of hazardous chemical safety in China: Opportunities, problems, challenges and tasks. Sci. Total Environ. 2018, 643, 1–11. [Google Scholar] [CrossRef]
- Zhang, J.; Fu, J.; Hao, H.; Fu, G.; Nie, F.; Zhang, W. Root causes of coal mine accidents: Characteristics of safety culture deficiencies based on accident statistics. Process Saf. Environ. Prot. 2020, 136, 78–91. [Google Scholar] [CrossRef]
- Kong, B.; Cao, Z.; Sun, T.; Qi, C.; Zhang, Y. Safety hazards in coal mines of Guizhou China during 2011–2020. Saf. Sci. 2021, 145, 105493. [Google Scholar] [CrossRef]
- Eliopoulou, E.; Papanikolaou, A.; Voulgarellis, M. Statistical analysis of ship accidents and review of safety level. Saf. Sci. 2016, 85, 282–292. [Google Scholar] [CrossRef]
- Hou, J.; Gai, W.-M.; Cheng, W.-Y.; Deng, Y.-F. Hazardous chemical leakage accidents and emergency evacuation response from 2009 to 2018 in China: A review. Saf. Sci. 2020, 135, 105101. [Google Scholar] [CrossRef]
- Zhou, K.; Xiao, L.; Lin, Y.; Yuan, D.; Wang, J. A Statistical Analysis of Hazardous Chemical Fatalities (HCFs) in China between 2015 and 2021. Sustainability 2022, 14, 2435. [Google Scholar] [CrossRef]
- Zhang, H.-D.; Zheng, X.-P. Characteristics of hazardous chemical accidents in China: A statistical investigation. J. Loss Prev. Process Ind. 2012, 25, 686–693. [Google Scholar] [CrossRef]
- He, G.; Zhang, L.; Lu, Y.; Mol, A.P. Managing major chemical accidents in China: Towards effective risk information. J. Hazard. Mater. 2011, 187, 171–181. [Google Scholar] [CrossRef]
- Hu, Z. The Study on Causes for Food Enterprise Ammonia Leakage Accidents in China; China University of Mining & Technology: Beijing, China, 2018. [Google Scholar]
- Aimin, L.; Lichen, S.; Yinquan, D.; Lijun, W. Comparative studies on accident mode of anhydrous ammonia leakage. J. Saf. Sci. Technol. 2007, 3, 21–24. [Google Scholar] [CrossRef]
- Roy, A.; Srivastava, P.; Sinha, S. Dynamic failure assessment of an ammonia storage unit: A case study. Process Saf. Environ. Prot. 2015, 94, 385–401. [Google Scholar] [CrossRef]
- Junior, M.M.; e Santos, M.S.; Vidal, M.; Carvalho, P. Overcoming the blame game to learn from major accidents: A systemic analysis of an Anhydrous Ammonia leakage accident. J. Loss Prev. Process Ind. 2012, 25, 33–39. [Google Scholar] [CrossRef]
- Kukkonen, J.; Savolainen, A.; Valkama, I.; Juntto, S.; Vesala, T. Long-range transport of ammonia released in a major chemical accident at Ionava, Lithuania. J. Hazard. Mater. 1993, 35, 1–16. [Google Scholar] [CrossRef]
- Michaels, R.A. Emergency planning and the acute toxic potency of inhaled ammonia. Environ. Health Perspect. 1999, 107, 617–627. [Google Scholar] [CrossRef] [PubMed]
- Labovský, J.; Jelemenský, Ľ. CFD simulations of ammonia dispersion using “dynamic” boundary conditions. Process Saf. Environ. Prot. 2010, 88, 243–252. [Google Scholar] [CrossRef]
- Tan, W.; Du, H.; Liu, L.; Su, T.; Liu, X. Experimental and numerical study of ammonia leakage and dispersion in a food factory. J. Loss Prev. Process Ind. 2017, 47, 129–139. [Google Scholar] [CrossRef]
- Nielsen, M.; Ott, S.; Jørgensen, H.E.; Bengtsson, R.; Nyrén, K.; Winter, S.; Ride, D.; Jones, C. Field experiments with dispersion of pressure liquefied ammonia. J. Hazard. Mater. 1997, 56, 59–105. [Google Scholar] [CrossRef]
- Xiaoyan, D.; Wuyi, C.; Ruiqing, Y.; Yeqiao, Q.; Miao, J. Study on regularity of ammonia leakage accident of ammonia refrigeration enterprises in China. Fire Sci. Technol. 2017, 36, 857–860. [Google Scholar] [CrossRef]
- Hui, L.; Zhichao, Z.; Huilong, F. Statistical Analysis on Liquid Ammonia Accidents of Workplace in China during 2011–2015. J. Jilin Jianzhu Univ. 2017, 34, 36–40. [Google Scholar] [CrossRef]
- Chen, C.; Reniers, G. Chemical industry in China: The current status, safety problems, and pathways for future sustainable development. Saf. Sci. 2020, 128, 104741. [Google Scholar] [CrossRef]
- George, A.; Bang, R.L.; Lari, A.-R.; Gang, R.K.; Kanjoor, J.R. Liquid ammonia injury. Burns 2000, 26, 409–413. [Google Scholar] [CrossRef]
- Wang, B.; Li, D.; Wu, C. Characteristics of hazardous chemical accidents during hot season in China from 1989 to 2019: A statistical investigation. Saf. Sci. 2020, 129, 104788. [Google Scholar] [CrossRef]
- Zimmerman, L.I.; Lima, R.; Pietrobon, R.; Marcozzi, D. The effects of seasonal variation on hazardous chemical releases. J. Hazard. Mater. 2008, 151, 232–238. [Google Scholar] [CrossRef]
- Barkhordarian, O.; Behbahaninia, A.; Bahrampoury, R. A novel ammonia-water combined power and refrigeration cycle with two different cooling temperature levels. Energy 2017, 120, 816–826. [Google Scholar] [CrossRef]
- Nenonen, N. Occupational accidents in the Finnish local government sector: Utilisation of national statistics. Int. J. Inj. Control Saf. Promot. 2011, 18, 321–329. [Google Scholar] [CrossRef] [PubMed]
- Vílchez, J.A.; Sevilla, S.; Montiel, H.; Casal, J. Historical analysis of accidents in chemical plants and in the transportation of hazardous materials. J. Loss Prev. Process Ind. 1995, 8, 87–96. [Google Scholar] [CrossRef]
- Palacios, A.; Puebla, U.D.L.A.; Mata, C.; Barraza, C. Historical analysis of accidents in the Mexican chemical industry. Rev. Mex. De Ing. Química 2020, 20, 113–133. [Google Scholar] [CrossRef]
Variable | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2017 | 2018 | 2019 | 2020 | Total |
---|---|---|---|---|---|---|---|---|---|---|---|---|
Case | 3 | 3 | 13 | 16 | 8 | 8 | 15 | 7 | 5 | 3 | 1 | 82 |
Deaths | 4 | 4 | 8 | 153 | 4 | 3 | 5 | 0 | 1 | 5 | 2 | 189 |
Injured | 137 | 4 | 519 | 190 | 70 | 31 | 112 | 1 | 9 | 8 | 0 | 1081 |
Time | Name and Addressess | Fatalities | Injuries |
---|---|---|---|
28 August 2011 | Hebei Zhangjiakou Jia Green Agricultural Products Company (Zhangjiakou, China) | 4 | 4 |
23 October 2012 | Hubei Honghu City Deyan Fisheries Company (Honghu, China) | 0 | 479 |
21 April 2013 | Sichuan Meishan Renshou County Jinfeng Food Factory (Meishan, China) | 4 | 22 |
3 June 2013 | Jilin Dehui Baoyuanfeng Poultry Industry Co. (Dehui, China) | 121 | 76 |
31 August 2013. | Shanghai Baoshan Weng Refrigeration Industry Co. (Shanghai, China) | 15 | 25 |
28 November 2013 | Shandong Yushan Hehe Food Co. (Yushan, China) | 7 | 6 |
Month | Accident Case | Fatalities | Injured | |||
---|---|---|---|---|---|---|
Number | Proportion | Number | Proportion | Number | Proportion | |
January | 3 | 3.66% | 0 | 0.00% | 1 | 0.09% |
February | 1 | 1.22% | 0 | 0.00% | 0 | 0.00% |
March | 6 | 7.32% | 7 | 3.70% | 33 | 3.05% |
April | 10 | 12.20% | 4 | 2.12% | 68 | 6.29% |
May | 5 | 6.10% | 3 | 1.59% | 20 | 1.85% |
June | 10 | 12.20% | 123 | 65.08% | 322 | 29.79% |
July | 12 | 14.63% | 4 | 2.12% | 28 | 2.59% |
August | 10 | 12.20% | 20 | 10.58% | 43 | 3.98% |
September | 10 | 12.20% | 0 | 0.00% | 53 | 4.90% |
October | 4 | 4.88% | 0 | 0.00% | 480 | 44.40% |
November | 6 | 7.32% | 21 | 11.11% | 26 | 2.41% |
December | 5 | 6.10% | 7 | 3.70% | 7 | 0.65% |
Region | Accident Case | Fatalities | Injured | |||
---|---|---|---|---|---|---|
Number | Proportion | Number | Proportion | Number | Proportion | |
North China | 8 | 9.76% | 11 | 5.82% | 18 | 1.67% |
Northeast China | 9 | 10.98% | 121 | 64.02% | 240 | 22.20% |
East China | 31 | 37.80% | 43 | 22.75% | 104 | 9.62% |
Central China | 16 | 19.51% | 1 | 0.53% | 649 | 60.04% |
South China | 4 | 4.88% | 0 | 0.00% | 1 | 0.09% |
Southwest China | 9 | 10.98% | 4 | 2.12% | 27 | 2.50% |
Northwest China | 5 | 6.10% | 9 | 4.76% | 42 | 3.89% |
Year | Laws, Standards, and Specifications |
---|---|
2021 | Work Safety Law of the PRC |
2014 | Special Equipment Safety Law of PRC |
2013 | Regulations on the Safe Management of Hazardous Chemicals in China |
2012 | Regulation on Safety Operation Licenses for Hazardous Chemicals Enterprises |
2009 | Regulations on safety supervision of special equipment |
2011 | Interim Provisions on the supervision and administration of major hazard installations of hazardous chemicals |
2010 | Management regulations for safety technical training and assessment of special operation personnel |
2010 | GB 50072 Code for design of cold store |
2011 | GB 28009 Safety code for cold store |
2018 | GB 18218 Identification of Major Hazard Installations |
2014 | GB 50016 Code for Fire Protection Design of Building |
2020 | GB/T 20801 Pressure piping code—Industrial piping |
2014 | GB 50351 Code for design of fire-dike in storage tank farm |
2018 | AQ 7015 The safety specification of ammonia refrigeration user |
2011 | SBJ 12 Code for installation and acceptance specification of ammonia refrigeration system |
2019 | DB44/T 2161 Cold storage safety management specification |
Number | Name | Time |
---|---|---|
1 | Notice of the Safety Committee of the State Council on In-depth Implementation of Special Treatment of Liquid Ammonia Use in Ammonia-related Refrigeration Enterprises (Safety Committee [2013] No. 6) | 24 September 2013 |
2 | Notice of the State Administration of Safety Supervision on the Issuance of Opinions on Curbing Serious Accidents in the Industry and Trade Sector (General Administration of Safety Supervision IV [2016] No. 68) | 28 June 2016 |
3 | Notice of the Office of the Safety Committee of the State Council for urging ammonia-related refrigeration enterprises to rectify major hidden accidents and strengthen safety supervision (Safety Committee Office Letter [2016] No. 3) | 25 February 2016 |
4 | Notice of the State Administration of Safety Supervision on the Issuance of the Action Plan to Carry out Identification and Control of Larger Risk Factors in Industrial and Trade Enterprises to Enhance the Ability to Prevent Accidents (General Administration of Safety Supervision IV [2016] No. 31) | 1 April 2016 |
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Luo, C.; Zhao, Y.; Xu, K. Study on the Regularity of Ammonia-Related Refrigeration Accidents in China from 2010 to 2020. Int. J. Environ. Res. Public Health 2022, 19, 8230. https://doi.org/10.3390/ijerph19148230
Luo C, Zhao Y, Xu K. Study on the Regularity of Ammonia-Related Refrigeration Accidents in China from 2010 to 2020. International Journal of Environmental Research and Public Health. 2022; 19(14):8230. https://doi.org/10.3390/ijerph19148230
Chicago/Turabian StyleLuo, Cong, Yunsheng Zhao, and Ke Xu. 2022. "Study on the Regularity of Ammonia-Related Refrigeration Accidents in China from 2010 to 2020" International Journal of Environmental Research and Public Health 19, no. 14: 8230. https://doi.org/10.3390/ijerph19148230
APA StyleLuo, C., Zhao, Y., & Xu, K. (2022). Study on the Regularity of Ammonia-Related Refrigeration Accidents in China from 2010 to 2020. International Journal of Environmental Research and Public Health, 19(14), 8230. https://doi.org/10.3390/ijerph19148230